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Thermodynamics of Trapping Gases for Underwater Superhydrophobicity

机译:捕集气体对水下超疏水性的​​热力学

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Rough surfaces submerged in a liquid can remain almost dry if the liquid does not fully wet the roughness, and gases are sustained in roughness grooves. Such partially dry surfaces can help reduce drag, enhance boiling, and reduce biofouling. Gases sustained in roughness grooves would be composed of air and the vapor phase of the liquid itself. In this work, the thermodynamics of sustaining gases (e.g., air) is considered. Governing equations are presented along with a solution methodology to determine a critical condition to sustain gases. The critical roughness scale to sustain gases is estimated for different degrees of saturation of gases dissolved in the liquid. It is shown that roughness spacings of less than a micron are essential to sustain gases on surfaces submerged in water at atmospheric pressure. This is consistent with prior empirical data.
机译:如果液体没有完全润湿粗糙度,浸没在液体中的粗糙表面几乎可以保持干燥,并且气体会滞留在粗糙度槽中。这种部分干燥的表面可以帮助减少阻力,增加沸腾并减少生物积垢。保持在粗糙槽中的气体将由空气和液体本身的气相组成。在这项工作中,考虑了维持气体(例如空气)的热力学。提出了控制方程式和解决方法,以确定维持气体的临界条件。针对溶解在液体中的气体的不同饱和度,估计了维持气体的临界粗糙度等级。结果表明,粗糙度间距小于一微米对于在大气压力下维持浸没在水中的表面上的气体至关重要。这与先前的经验数据一致。

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